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Constructivist Learning…1
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Showing 1 to 15 of 18 results Save | Export
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Elaine Kit Ling Yeung; Miao Zhong; Jing Huang; Man Ho Chan; Carrey Tik Sze Siu; Him Cheung – Asia-Pacific Education Researcher, 2025
This study compares direct instruction to two constructivist approaches, namely experimentation and problem-based learning, in fifth-grade science learning in Hong Kong. Constructivist instructional approaches, contrary to direct instruction, stress on students' active role in constructing knowledge in learning. Experimentation and problem-based…
Descriptors: Constructivism (Learning), Science Instruction, Outcomes of Education, Problem Based Learning
Pough, Celestine Banks – ProQuest LLC, 2023
The purpose of this action research study was to explore the impact of problem-based learning on science instruction in my eighth-grade college preparatory classroom. Constructivism was the framework for this study. Problem-based learning is based on constructivist principles, and it served as the instructional model for this study. PBL can foster…
Descriptors: Middle School Students, Problem Based Learning, Science Achievement, Science Instruction
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Faaizah Shahbodin; Rosziati Ibrahim; Noor Maizura Mohamad Noor; Noraaini Ali; Rohayu Abdul Ghani – International Society for Technology, Education, and Science, 2023
This paper illustrates the integration of the hybrid Problem-Based Learning (PBL) approach in the development of the prototype C[superscript 2]HADAM, a multimedia courseware that is intended for the teaching and learning of the Science subject for form two students in Malaysian secondary schools. The discussion begins with the Constructivist…
Descriptors: Teaching Methods, Problem Based Learning, Science Instruction, Courseware
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Calalb, Mihail – Athens Journal of Education, 2023
A detailed characteristic of teaching and learning approaches used within the new concept of Learning by Being (LBB) is given. The evolution of educational paradigms from Learning by Doing (LBD) and Learning by Understanding (LBU) toward LBB is analyzed. The basic idea of LBB is students' ownership on cognitive goals, or the assumption of learning…
Descriptors: Constructivism (Learning), Physics, Science Instruction, Student Participation
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Funa, Aaron A.; Prudente, Maricar S. – International Journal of Instruction, 2021
Preparing students for the real challenges in life is one of the most important goals in education. Constructivism is an approach that uses real-life experiences to construct knowledge. Problem-Based Learning (PBL), for almost five decades now, has been the most innovative constructivist pedagogy used worldwide. However, with the rising…
Descriptors: Science Instruction, Problem Based Learning, Instructional Effectiveness, Secondary School Students
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Kossybayeva, Umitzhan; Shaldykova, Bagit; Akhmanova, Danna; Kulanina, Svetlana – Education and Information Technologies, 2022
The study describes an innovative methodology for teaching natural and mathematical sciences in the context of distance learning using modern technological solutions and based on the concepts of active social learning that involves constructivist, problem-oriented, project and research approaches. The proposed methodology was tested on 80 students…
Descriptors: Instructional Improvement, Natural Sciences, Mathematics Instruction, Science Instruction
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Arthurs, Leilani A.; Kreager, Bailey Zo – International Journal of Science Education, 2017
Engaging students in active learning is linked to positive learning outcomes. This study aims to synthesise the peer-reviewed literature about "active learning" in college science classroom settings. Using the methodology of an integrative literature review, 337 articles archived in the Educational Resources Information Center (ERIC) are…
Descriptors: Class Activities, Active Learning, College Science, Undergraduate Students
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Ünal, Cezmi; Özdemir, Ömer Faruk – European Journal of Science and Mathematics Education, 2013
In general, laboratories are exercises with a primary focus on the verification of established laws and principles, or on the discovery of objectively knowable facts. In laboratories, students gather data without comprehending the meaning of their actions. The cognitive demand of laboratory tasks is reduced to a minimal level. To prevent these…
Descriptors: Science Instruction, Science Education, Physics, Science Laboratories
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Vasconcelos, Clara – Research in Science Education, 2012
If our chosen aim in science education is to be inclusive and to improve students' learning achievements, then we must identify teaching methodologies that are appropriate for teaching and learning specific knowledge. Karagiorgi and Symeo (2005) remind us that instructional designers are thus challenged to translate the philosophy of…
Descriptors: Constructivism (Learning), Instructional Design, Intervention, Environmental Education
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Guerra, Cecília; Moreira, António; Vieira, Rui Marques – Bulgarian Comparative Education Society, 2012
One of the challenges higher education institutions face is to effectively endow science primary teachers with competences on "how", "where", "when" and "whether" to use technological resources (software and hardware) in teaching contexts. Teachers' Technological Pedagogical Content Knowledge (TPCK) requires…
Descriptors: Information Technology, Teacher Competencies, Science Teachers, Teacher Education
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Tatar, Erdal; Oktay, Munir – Research in Science & Technological Education, 2011
Background: Problem-based learning (PBL) is a teaching approach working in cooperation with self-learning and involving research to solve real problems. The first law of thermodynamics states that energy can neither be created nor destroyed, but that energy is conserved. Students had difficulty learning or misconceptions about this law. This study…
Descriptors: Constructivism (Learning), College Science, Thermodynamics, Problem Based Learning
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Boyce, Mary C.; Singh, Kuki – Journal of Chemical Education, 2008
This paper describes a student-focused activity that promotes effective learning in analytical chemistry. Providing an environment where students were responsible for their own learning allowed them to participate at all levels from designing the problem to be addressed, planning the laboratory work to support their learning, to providing evidence…
Descriptors: College Science, Portfolio Assessment, Chemistry, Problem Solving
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Domin, Daniel S. – Journal of Chemical Education, 1999
Develops a taxonomy of styles for teaching general chemistry laboratory courses. Differentiates between expository instruction, inquiry instruction, discovery instruction, and problem-based instruction in the laboratory. Reviews research on the effectiveness of the various types of instruction. Contains 68 references. (WRM)
Descriptors: Constructivism (Learning), Educational Objectives, Higher Education, Inquiry
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Bockholt, Susanne M.; West, J. Paige; Bollenbacher, Walter E. – Cell Biology Education, 2003
Multimedia has the potential of providing bioscience education novel learning environments and pedagogy applications to foster student interest, involve students in the research process, advance critical thinking/problem-solving skills, and develop conceptual understanding of biological topics. "Cancer Cell Biology," an interactive, multimedia,…
Descriptors: Feedback (Response), Constructivism (Learning), Physicians, Student Interests
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Roth, Wolff-Michael – School Science and Mathematics, 1993
Provides an example of the integration of science and mathematics learning of one high school physics student in a constructivist classroom. Discusses the student's integration of mathematical and nonmathematical representations and of different mathematical representations in a nonuniform acceleration experiment. Describes a model for integrating…
Descriptors: Case Studies, Constructivism (Learning), Graphs, Integrated Activities
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